| 1 | /** \file MoleculeListClass.cpp | 
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| 2 | * | 
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| 3 | * Function implementations for the class MoleculeListClass. | 
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| 4 | * | 
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| 5 | */ | 
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| 6 |  | 
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| 7 | #include "atom.hpp" | 
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| 8 | #include "bond.hpp" | 
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| 9 | #include "boundary.hpp" | 
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| 10 | #include "config.hpp" | 
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| 11 | #include "element.hpp" | 
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| 12 | #include "helpers.hpp" | 
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| 13 | #include "linkedcell.hpp" | 
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| 14 | #include "molecule.hpp" | 
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| 15 | #include "memoryallocator.hpp" | 
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| 16 | #include "periodentafel.hpp" | 
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| 17 |  | 
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| 18 | /*********************************** Functions for class MoleculeListClass *************************/ | 
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| 19 |  | 
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| 20 | /** Constructor for MoleculeListClass. | 
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| 21 | */ | 
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| 22 | MoleculeListClass::MoleculeListClass() | 
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| 23 | { | 
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| 24 | // empty lists | 
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| 25 | ListOfMolecules.clear(); | 
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| 26 | MaxIndex = 1; | 
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| 27 | }; | 
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| 28 |  | 
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| 29 | /** Destructor for MoleculeListClass. | 
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| 30 | */ | 
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| 31 | MoleculeListClass::~MoleculeListClass() | 
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| 32 | { | 
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| 33 | cout << Verbose(3) << this << ": Freeing ListOfMolcules." << endl; | 
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| 34 | for (MoleculeList::iterator ListRunner = ListOfMolecules.begin(); ListRunner != ListOfMolecules.end(); ListRunner++) { | 
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| 35 | cout << Verbose(4) << "ListOfMolecules: Freeing " << *ListRunner << "." << endl; | 
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| 36 | delete (*ListRunner); | 
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| 37 | } | 
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| 38 | cout << Verbose(4) << "Freeing ListOfMolecules." << endl; | 
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| 39 | ListOfMolecules.clear(); // empty list | 
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| 40 | }; | 
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| 41 |  | 
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| 42 | /** Insert a new molecule into the list and set its number. | 
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| 43 | * \param *mol molecule to add to list. | 
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| 44 | * \return true - add successful | 
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| 45 | */ | 
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| 46 | void MoleculeListClass::insert(molecule *mol) | 
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| 47 | { | 
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| 48 | mol->IndexNr = MaxIndex++; | 
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| 49 | ListOfMolecules.push_back(mol); | 
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| 50 | }; | 
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| 51 |  | 
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| 52 | /** Compare whether two molecules are equal. | 
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| 53 | * \param *a molecule one | 
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| 54 | * \param *n molecule two | 
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| 55 | * \return lexical value (-1, 0, +1) | 
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| 56 | */ | 
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| 57 | int MolCompare(const void *a, const void *b) | 
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| 58 | { | 
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| 59 | int *aList = NULL, *bList = NULL; | 
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| 60 | int Count, Counter, aCounter, bCounter; | 
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| 61 | int flag; | 
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| 62 | atom *aWalker = NULL; | 
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| 63 | atom *bWalker = NULL; | 
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| 64 |  | 
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| 65 | // sort each atom list and put the numbers into a list, then go through | 
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| 66 | //cout << "Comparing fragment no. " << *(molecule **)a << " to " << *(molecule **)b << "." << endl; | 
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| 67 | if ((**(molecule **) a).AtomCount < (**(molecule **) b).AtomCount) { | 
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| 68 | return -1; | 
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| 69 | } else { | 
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| 70 | if ((**(molecule **) a).AtomCount > (**(molecule **) b).AtomCount) | 
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| 71 | return +1; | 
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| 72 | else { | 
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| 73 | Count = (**(molecule **) a).AtomCount; | 
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| 74 | aList = new int[Count]; | 
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| 75 | bList = new int[Count]; | 
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| 76 |  | 
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| 77 | // fill the lists | 
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| 78 | aWalker = (**(molecule **) a).start; | 
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| 79 | bWalker = (**(molecule **) b).start; | 
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| 80 | Counter = 0; | 
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| 81 | aCounter = 0; | 
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| 82 | bCounter = 0; | 
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| 83 | while ((aWalker->next != (**(molecule **) a).end) && (bWalker->next != (**(molecule **) b).end)) { | 
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| 84 | aWalker = aWalker->next; | 
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| 85 | bWalker = bWalker->next; | 
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| 86 | if (aWalker->GetTrueFather() == NULL) | 
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| 87 | aList[Counter] = Count + (aCounter++); | 
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| 88 | else | 
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| 89 | aList[Counter] = aWalker->GetTrueFather()->nr; | 
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| 90 | if (bWalker->GetTrueFather() == NULL) | 
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| 91 | bList[Counter] = Count + (bCounter++); | 
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| 92 | else | 
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| 93 | bList[Counter] = bWalker->GetTrueFather()->nr; | 
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| 94 | Counter++; | 
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| 95 | } | 
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| 96 | // check if AtomCount was for real | 
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| 97 | flag = 0; | 
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| 98 | if ((aWalker->next == (**(molecule **) a).end) && (bWalker->next != (**(molecule **) b).end)) { | 
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| 99 | flag = -1; | 
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| 100 | } else { | 
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| 101 | if ((aWalker->next != (**(molecule **) a).end) && (bWalker->next == (**(molecule **) b).end)) | 
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| 102 | flag = 1; | 
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| 103 | } | 
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| 104 | if (flag == 0) { | 
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| 105 | // sort the lists | 
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| 106 | gsl_heapsort(aList, Count, sizeof(int), CompareDoubles); | 
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| 107 | gsl_heapsort(bList, Count, sizeof(int), CompareDoubles); | 
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| 108 | // compare the lists | 
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| 109 |  | 
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| 110 | flag = 0; | 
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| 111 | for (int i = 0; i < Count; i++) { | 
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| 112 | if (aList[i] < bList[i]) { | 
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| 113 | flag = -1; | 
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| 114 | } else { | 
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| 115 | if (aList[i] > bList[i]) | 
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| 116 | flag = 1; | 
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| 117 | } | 
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| 118 | if (flag != 0) | 
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| 119 | break; | 
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| 120 | } | 
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| 121 | } | 
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| 122 | delete[] (aList); | 
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| 123 | delete[] (bList); | 
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| 124 | return flag; | 
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| 125 | } | 
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| 126 | } | 
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| 127 | return -1; | 
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| 128 | }; | 
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| 129 |  | 
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| 130 | /** Output of a list of all molecules. | 
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| 131 | * \param *out output stream | 
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| 132 | */ | 
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| 133 | void MoleculeListClass::Enumerate(ofstream *out) | 
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| 134 | { | 
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| 135 | element* Elemental = NULL; | 
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| 136 | atom *Walker = NULL; | 
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| 137 | int Counts[MAX_ELEMENTS]; | 
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| 138 | double size=0; | 
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| 139 | Vector Origin; | 
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| 140 |  | 
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| 141 | // header | 
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| 142 | *out << "Index\tName\t\tAtoms\tFormula\tCenter\tSize" << endl; | 
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| 143 | cout << Verbose(0) << "-----------------------------------------------" << endl; | 
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| 144 | if (ListOfMolecules.size() == 0) | 
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| 145 | *out << "\tNone" << endl; | 
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| 146 | else { | 
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| 147 | Origin.Zero(); | 
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| 148 | for (MoleculeList::iterator ListRunner = ListOfMolecules.begin(); ListRunner != ListOfMolecules.end(); ListRunner++) { | 
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| 149 | // reset element counts | 
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| 150 | for (int j = 0; j<MAX_ELEMENTS;j++) | 
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| 151 | Counts[j] = 0; | 
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| 152 | // count atoms per element and determine size of bounding sphere | 
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| 153 | size=0.; | 
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| 154 | Walker = (*ListRunner)->start; | 
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| 155 | while (Walker->next != (*ListRunner)->end) { | 
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| 156 | Walker = Walker->next; | 
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| 157 | Counts[Walker->type->Z]++; | 
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| 158 | if (Walker->x.DistanceSquared(&Origin) > size) | 
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| 159 | size = Walker->x.DistanceSquared(&Origin); | 
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| 160 | } | 
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| 161 | // output Index, Name, number of atoms, chemical formula | 
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| 162 | *out << ((*ListRunner)->ActiveFlag ? "*" : " ") << (*ListRunner)->IndexNr << "\t" << (*ListRunner)->name << "\t\t" << (*ListRunner)->AtomCount << "\t"; | 
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| 163 | Elemental = (*ListRunner)->elemente->end; | 
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| 164 | while(Elemental->previous != (*ListRunner)->elemente->start) { | 
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| 165 | Elemental = Elemental->previous; | 
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| 166 | if (Counts[Elemental->Z] != 0) | 
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| 167 | *out << Elemental->symbol << Counts[Elemental->Z]; | 
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| 168 | } | 
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| 169 | // Center and size | 
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| 170 | *out << "\t" << (*ListRunner)->Center << "\t" << sqrt(size) << endl; | 
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| 171 | } | 
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| 172 | } | 
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| 173 | }; | 
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| 174 |  | 
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| 175 | /** Returns the molecule with the given index \a index. | 
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| 176 | * \param index index of the desired molecule | 
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| 177 | * \return pointer to molecule structure, NULL if not found | 
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| 178 | */ | 
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| 179 | molecule * MoleculeListClass::ReturnIndex(int index) | 
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| 180 | { | 
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| 181 | for(MoleculeList::iterator ListRunner = ListOfMolecules.begin(); ListRunner != ListOfMolecules.end(); ListRunner++) | 
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| 182 | if ((*ListRunner)->IndexNr == index) | 
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| 183 | return (*ListRunner); | 
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| 184 | return NULL; | 
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| 185 | }; | 
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| 186 |  | 
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| 187 | /** Simple merge of two molecules into one. | 
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| 188 | * \param *mol destination molecule | 
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| 189 | * \param *srcmol source molecule | 
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| 190 | * \return true - merge successful, false - merge failed (probably due to non-existant indices | 
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| 191 | */ | 
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| 192 | bool MoleculeListClass::SimpleMerge(molecule *mol, molecule *srcmol) | 
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| 193 | { | 
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| 194 | if (srcmol == NULL) | 
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| 195 | return false; | 
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| 196 |  | 
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| 197 | // put all molecules of src into mol | 
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| 198 | atom *Walker = srcmol->start; | 
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| 199 | atom *NextAtom = Walker->next; | 
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| 200 | while (NextAtom != srcmol->end) { | 
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| 201 | Walker = NextAtom; | 
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| 202 | NextAtom = Walker->next; | 
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| 203 | srcmol->UnlinkAtom(Walker); | 
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| 204 | mol->AddAtom(Walker); | 
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| 205 | } | 
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| 206 |  | 
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| 207 | // remove src | 
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| 208 | ListOfMolecules.remove(srcmol); | 
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| 209 | delete(srcmol); | 
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| 210 | return true; | 
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| 211 | }; | 
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| 212 |  | 
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| 213 | /** Simple add of one molecules into another. | 
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| 214 | * \param *mol destination molecule | 
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| 215 | * \param *srcmol source molecule | 
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| 216 | * \return true - merge successful, false - merge failed (probably due to non-existant indices | 
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| 217 | */ | 
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| 218 | bool MoleculeListClass::SimpleAdd(molecule *mol, molecule *srcmol) | 
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| 219 | { | 
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| 220 | if (srcmol == NULL) | 
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| 221 | return false; | 
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| 222 |  | 
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| 223 | // put all molecules of src into mol | 
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| 224 | atom *Walker = srcmol->start; | 
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| 225 | atom *NextAtom = Walker->next; | 
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| 226 | while (NextAtom != srcmol->end) { | 
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| 227 | Walker = NextAtom; | 
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| 228 | NextAtom = Walker->next; | 
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| 229 | Walker = mol->AddCopyAtom(Walker); | 
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| 230 | Walker->father = Walker; | 
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| 231 | } | 
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| 232 |  | 
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| 233 | return true; | 
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| 234 | }; | 
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| 235 |  | 
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| 236 | /** Simple merge of a given set of molecules into one. | 
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| 237 | * \param *mol destination molecule | 
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| 238 | * \param *src index of set of source molecule | 
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| 239 | * \param N number of source molecules | 
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| 240 | * \return true - merge successful, false - some merges failed (probably due to non-existant indices) | 
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| 241 | */ | 
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| 242 | bool MoleculeListClass::SimpleMultiMerge(molecule *mol, int *src, int N) | 
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| 243 | { | 
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| 244 | bool status = true; | 
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| 245 | // check presence of all source molecules | 
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| 246 | for (int i=0;i<N;i++) { | 
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| 247 | molecule *srcmol = ReturnIndex(src[i]); | 
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| 248 | status = status && SimpleMerge(mol, srcmol); | 
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| 249 | } | 
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| 250 | return status; | 
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| 251 | }; | 
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| 252 |  | 
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| 253 | /** Simple add of a given set of molecules into one. | 
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| 254 | * \param *mol destination molecule | 
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| 255 | * \param *src index of set of source molecule | 
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| 256 | * \param N number of source molecules | 
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| 257 | * \return true - merge successful, false - some merges failed (probably due to non-existant indices) | 
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| 258 | */ | 
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| 259 | bool MoleculeListClass::SimpleMultiAdd(molecule *mol, int *src, int N) | 
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| 260 | { | 
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| 261 | bool status = true; | 
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| 262 | // check presence of all source molecules | 
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| 263 | for (int i=0;i<N;i++) { | 
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| 264 | molecule *srcmol = ReturnIndex(src[i]); | 
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| 265 | status = status && SimpleAdd(mol, srcmol); | 
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| 266 | } | 
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| 267 | return status; | 
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| 268 | }; | 
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| 269 |  | 
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| 270 | /** Scatter merge of a given set of molecules into one. | 
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| 271 | * Scatter merge distributes the molecules in such a manner that they don't overlap. | 
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| 272 | * \param *mol destination molecule | 
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| 273 | * \param *src index of set of source molecule | 
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| 274 | * \param N number of source molecules | 
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| 275 | * \return true - merge successful, false - merge failed (probably due to non-existant indices | 
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| 276 | * \TODO find scatter center for each src molecule | 
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| 277 | */ | 
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| 278 | bool MoleculeListClass::ScatterMerge(molecule *mol, int *src, int N) | 
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| 279 | { | 
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| 280 | // check presence of all source molecules | 
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| 281 | for (int i=0;i<N;i++) { | 
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| 282 | // get pointer to src molecule | 
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| 283 | molecule *srcmol = ReturnIndex(src[i]); | 
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| 284 | if (srcmol == NULL) | 
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| 285 | return false; | 
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| 286 | } | 
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| 287 | // adapt each Center | 
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| 288 | for (int i=0;i<N;i++) { | 
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| 289 | // get pointer to src molecule | 
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| 290 | molecule *srcmol = ReturnIndex(src[i]); | 
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| 291 | //srcmol->Center.Zero(); | 
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| 292 | srcmol->Translate(&srcmol->Center); | 
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| 293 | } | 
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| 294 | // perform a simple multi merge | 
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| 295 | SimpleMultiMerge(mol, src, N); | 
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| 296 | return true; | 
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| 297 | }; | 
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| 298 |  | 
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| 299 | /** Embedding merge of a given set of molecules into one. | 
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| 300 | * Embedding merge inserts one molecule into the other. | 
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| 301 | * \param *mol destination molecule (fixed one) | 
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| 302 | * \param *srcmol source molecule (variable one, where atoms are taken from) | 
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| 303 | * \return true - merge successful, false - merge failed (probably due to non-existant indices) | 
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| 304 | * \TODO linked cell dimensions for boundary points has to be as big as inner diameter! | 
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| 305 | */ | 
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| 306 | bool MoleculeListClass::EmbedMerge(molecule *mol, molecule *srcmol) | 
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| 307 | { | 
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| 308 | if ((srcmol == NULL) || (mol == NULL)) { | 
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| 309 | cout << Verbose(1) << "ERROR: Either fixed or variable molecule is given as NULL." << endl; | 
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| 310 | return false; | 
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| 311 | } | 
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| 312 |  | 
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| 313 | // calculate envelope for *mol | 
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| 314 | LinkedCell *LCList = new LinkedCell(mol, 8.); | 
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| 315 | FindNonConvexBorder((ofstream *)&cout, mol, LCList, 4., NULL); | 
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| 316 | if (mol->TesselStruct == NULL) { | 
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| 317 | cout << Verbose(1) << "ERROR: Could not tesselate the fixed molecule." << endl; | 
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| 318 | return false; | 
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| 319 | } | 
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| 320 | delete(LCList); | 
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| 321 | LCList = new LinkedCell(mol->TesselStruct, 8.);  // re-create with boundary points only! | 
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| 322 |  | 
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| 323 | // prepare index list for bonds | 
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| 324 | srcmol->CountAtoms((ofstream *)&cout); | 
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| 325 | atom ** CopyAtoms = new atom*[srcmol->AtomCount]; | 
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| 326 | for(int i=0;i<srcmol->AtomCount;i++) | 
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| 327 | CopyAtoms[i] = NULL; | 
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| 328 |  | 
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| 329 | // for each of the source atoms check whether we are in- or outside and add copy atom | 
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| 330 | atom *Walker = srcmol->start; | 
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| 331 | int nr=0; | 
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| 332 | while (Walker->next != srcmol->end) { | 
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| 333 | Walker = Walker->next; | 
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| 334 | cout << Verbose(2) << "INFO: Current Walker is " << *Walker << "." << endl; | 
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| 335 | if (!mol->TesselStruct->IsInnerPoint((ofstream *)&cout, Walker->x, LCList)) { | 
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| 336 | CopyAtoms[Walker->nr] = new atom(Walker); | 
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| 337 | mol->AddAtom(CopyAtoms[Walker->nr]); | 
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| 338 | nr++; | 
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| 339 | } else { | 
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| 340 | // do nothing | 
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| 341 | } | 
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| 342 | } | 
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| 343 | cout << Verbose(1) << nr << " of " << srcmol->AtomCount << " atoms have been merged."; | 
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| 344 |  | 
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| 345 | // go through all bonds and add as well | 
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| 346 | bond *Binder = srcmol->first; | 
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| 347 | while(Binder->next != srcmol->last) { | 
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| 348 | Binder = Binder->next; | 
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| 349 | cout << Verbose(3) << "Adding Bond between " << *CopyAtoms[Binder->leftatom->nr] << " and " << *CopyAtoms[Binder->rightatom->nr]<< "." << endl; | 
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| 350 | mol->AddBond(CopyAtoms[Binder->leftatom->nr], CopyAtoms[Binder->rightatom->nr], Binder->BondDegree); | 
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| 351 | } | 
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| 352 | delete(LCList); | 
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| 353 | return true; | 
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| 354 | }; | 
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| 355 |  | 
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| 356 | /** Simple output of the pointers in ListOfMolecules. | 
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| 357 | * \param *out output stream | 
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| 358 | */ | 
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| 359 | void MoleculeListClass::Output(ofstream *out) | 
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| 360 | { | 
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| 361 | *out << Verbose(1) << "MoleculeList: "; | 
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| 362 | for (MoleculeList::iterator ListRunner = ListOfMolecules.begin(); ListRunner != ListOfMolecules.end(); ListRunner++) | 
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| 363 | *out << *ListRunner << "\t"; | 
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| 364 | *out << endl; | 
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| 365 | }; | 
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| 366 |  | 
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| 367 | /** Calculates necessary hydrogen correction due to unwanted interaction between saturated ones. | 
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| 368 | * If for a pair of two hydrogen atoms a and b, at least is a saturated one, and a and b are not | 
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| 369 | * bonded to the same atom, then we add for this pair a correction term constructed from a Morse | 
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| 370 | * potential function fit to QM calculations with respecting to the interatomic hydrogen distance. | 
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| 371 | * \param *out output stream for debugging | 
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| 372 | * \param *path path to file | 
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| 373 | */ | 
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| 374 | bool MoleculeListClass::AddHydrogenCorrection(ofstream *out, char *path) | 
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| 375 | { | 
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| 376 | atom *Walker = NULL; | 
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| 377 | atom *Runner = NULL; | 
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| 378 | double ***FitConstant = NULL, **correction = NULL; | 
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| 379 | int a, b; | 
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| 380 | ofstream output; | 
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| 381 | ifstream input; | 
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| 382 | string line; | 
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| 383 | stringstream zeile; | 
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| 384 | double distance; | 
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| 385 | char ParsedLine[1023]; | 
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| 386 | double tmp; | 
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| 387 | char *FragmentNumber = NULL; | 
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| 388 |  | 
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| 389 | cout << Verbose(1) << "Saving hydrogen saturation correction ... "; | 
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| 390 | // 0. parse in fit constant files that should have the same dimension as the final energy files | 
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| 391 | // 0a. find dimension of matrices with constants | 
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| 392 | line = path; | 
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| 393 | line.append("/"); | 
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| 394 | line += FRAGMENTPREFIX; | 
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| 395 | line += "1"; | 
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| 396 | line += FITCONSTANTSUFFIX; | 
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| 397 | input.open(line.c_str()); | 
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| 398 | if (input == NULL) { | 
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| 399 | cerr << endl << "Unable to open " << line << ", is the directory correct?" | 
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| 400 | << endl; | 
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| 401 | return false; | 
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| 402 | } | 
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| 403 | a = 0; | 
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| 404 | b = -1; // we overcount by one | 
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| 405 | while (!input.eof()) { | 
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| 406 | input.getline(ParsedLine, 1023); | 
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| 407 | zeile.str(ParsedLine); | 
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| 408 | int i = 0; | 
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| 409 | while (!zeile.eof()) { | 
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| 410 | zeile >> distance; | 
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| 411 | i++; | 
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| 412 | } | 
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| 413 | if (i > a) | 
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| 414 | a = i; | 
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| 415 | b++; | 
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| 416 | } | 
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| 417 | cout << "I recognized " << a << " columns and " << b << " rows, "; | 
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| 418 | input.close(); | 
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| 419 |  | 
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| 420 | // 0b. allocate memory for constants | 
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| 421 | FitConstant = Malloc<double**>(3, "MoleculeListClass::AddHydrogenCorrection: ***FitConstant"); | 
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| 422 | for (int k = 0; k < 3; k++) { | 
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| 423 | FitConstant[k] = Malloc<double*>(a, "MoleculeListClass::AddHydrogenCorrection: **FitConstant[]"); | 
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| 424 | for (int i = a; i--;) { | 
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| 425 | FitConstant[k][i] = Malloc<double>(b, "MoleculeListClass::AddHydrogenCorrection: *FitConstant[][]"); | 
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| 426 | } | 
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| 427 | } | 
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| 428 | // 0c. parse in constants | 
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| 429 | for (int i = 0; i < 3; i++) { | 
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| 430 | line = path; | 
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| 431 | line.append("/"); | 
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| 432 | line += FRAGMENTPREFIX; | 
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| 433 | sprintf(ParsedLine, "%d", i + 1); | 
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| 434 | line += ParsedLine; | 
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| 435 | line += FITCONSTANTSUFFIX; | 
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| 436 | input.open(line.c_str()); | 
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| 437 | if (input == NULL) { | 
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| 438 | cerr << endl << "Unable to open " << line << ", is the directory correct?" << endl; | 
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| 439 | return false; | 
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| 440 | } | 
|---|
| 441 | int k = 0, l; | 
|---|
| 442 | while ((!input.eof()) && (k < b)) { | 
|---|
| 443 | input.getline(ParsedLine, 1023); | 
|---|
| 444 | //cout << "Current Line: " << ParsedLine << endl; | 
|---|
| 445 | zeile.str(ParsedLine); | 
|---|
| 446 | zeile.clear(); | 
|---|
| 447 | l = 0; | 
|---|
| 448 | while ((!zeile.eof()) && (l < a)) { | 
|---|
| 449 | zeile >> FitConstant[i][l][k]; | 
|---|
| 450 | //cout << FitConstant[i][l][k] << "\t"; | 
|---|
| 451 | l++; | 
|---|
| 452 | } | 
|---|
| 453 | //cout << endl; | 
|---|
| 454 | k++; | 
|---|
| 455 | } | 
|---|
| 456 | input.close(); | 
|---|
| 457 | } | 
|---|
| 458 | for (int k = 0; k < 3; k++) { | 
|---|
| 459 | cout << "Constants " << k << ":" << endl; | 
|---|
| 460 | for (int j = 0; j < b; j++) { | 
|---|
| 461 | for (int i = 0; i < a; i++) { | 
|---|
| 462 | cout << FitConstant[k][i][j] << "\t"; | 
|---|
| 463 | } | 
|---|
| 464 | cout << endl; | 
|---|
| 465 | } | 
|---|
| 466 | cout << endl; | 
|---|
| 467 | } | 
|---|
| 468 |  | 
|---|
| 469 | // 0d. allocate final correction matrix | 
|---|
| 470 | correction = Malloc<double*>(a, "MoleculeListClass::AddHydrogenCorrection: **correction"); | 
|---|
| 471 | for (int i = a; i--;) | 
|---|
| 472 | correction[i] = Malloc<double>(b, "MoleculeListClass::AddHydrogenCorrection: *correction[]"); | 
|---|
| 473 |  | 
|---|
| 474 | // 1a. go through every molecule in the list | 
|---|
| 475 | for (MoleculeList::iterator ListRunner = ListOfMolecules.begin(); ListRunner != ListOfMolecules.end(); ListRunner++) { | 
|---|
| 476 | // 1b. zero final correction matrix | 
|---|
| 477 | for (int k = a; k--;) | 
|---|
| 478 | for (int j = b; j--;) | 
|---|
| 479 | correction[k][j] = 0.; | 
|---|
| 480 | // 2. take every hydrogen that is a saturated one | 
|---|
| 481 | Walker = (*ListRunner)->start; | 
|---|
| 482 | while (Walker->next != (*ListRunner)->end) { | 
|---|
| 483 | Walker = Walker->next; | 
|---|
| 484 | //cout << Verbose(1) << "Walker: " << *Walker << " with first bond " << *(*Runner)->ListOfBondsPerAtom[Walker->nr][0] << "." << endl; | 
|---|
| 485 | if ((Walker->type->Z == 1) && ((Walker->father == NULL) | 
|---|
| 486 | || (Walker->father->type->Z != 1))) { // if it's a hydrogen | 
|---|
| 487 | Runner = (*ListRunner)->start; | 
|---|
| 488 | while (Runner->next != (*ListRunner)->end) { | 
|---|
| 489 | Runner = Runner->next; | 
|---|
| 490 | //cout << Verbose(2) << "Runner: " << *Runner << " with first bond " << *(*Runner)->ListOfBondsPerAtom[Runner->nr][0] << "." << endl; | 
|---|
| 491 | // 3. take every other hydrogen that is the not the first and not bound to same bonding partner | 
|---|
| 492 | if ((Runner->type->Z == 1) && (Runner->nr > Walker->nr) && ((*ListRunner)->ListOfBondsPerAtom[Runner->nr][0]->GetOtherAtom(Runner) != (*ListRunner)->ListOfBondsPerAtom[Walker->nr][0]->GetOtherAtom(Walker))) { // (hydrogens have only one bonding partner!) | 
|---|
| 493 | // 4. evaluate the morse potential for each matrix component and add up | 
|---|
| 494 | distance = Runner->x.Distance(&Walker->x); | 
|---|
| 495 | //cout << "Fragment " << (*ListRunner)->name << ": " << *Runner << "<= " << distance << "=>" << *Walker << ":" << endl; | 
|---|
| 496 | for (int k = 0; k < a; k++) { | 
|---|
| 497 | for (int j = 0; j < b; j++) { | 
|---|
| 498 | switch (k) { | 
|---|
| 499 | case 1: | 
|---|
| 500 | case 7: | 
|---|
| 501 | case 11: | 
|---|
| 502 | tmp = pow(FitConstant[0][k][j] * (1. - exp(-FitConstant[1][k][j] * (distance - FitConstant[2][k][j]))), 2); | 
|---|
| 503 | break; | 
|---|
| 504 | default: | 
|---|
| 505 | tmp = FitConstant[0][k][j] * pow(distance, FitConstant[1][k][j]) + FitConstant[2][k][j]; | 
|---|
| 506 | }; | 
|---|
| 507 | correction[k][j] -= tmp; // ground state is actually lower (disturbed by additional interaction) | 
|---|
| 508 | //cout << tmp << "\t"; | 
|---|
| 509 | } | 
|---|
| 510 | //cout << endl; | 
|---|
| 511 | } | 
|---|
| 512 | //cout << endl; | 
|---|
| 513 | } | 
|---|
| 514 | } | 
|---|
| 515 | } | 
|---|
| 516 | } | 
|---|
| 517 | // 5. write final matrix to file | 
|---|
| 518 | line = path; | 
|---|
| 519 | line.append("/"); | 
|---|
| 520 | line += FRAGMENTPREFIX; | 
|---|
| 521 | FragmentNumber = FixedDigitNumber(ListOfMolecules.size(), (*ListRunner)->IndexNr); | 
|---|
| 522 | line += FragmentNumber; | 
|---|
| 523 | delete (FragmentNumber); | 
|---|
| 524 | line += HCORRECTIONSUFFIX; | 
|---|
| 525 | output.open(line.c_str()); | 
|---|
| 526 | output << "Time\t\tTotal\t\tKinetic\t\tNonLocal\tCorrelation\tExchange\tPseudo\t\tHartree\t\t-Gauss\t\tEwald\t\tIonKin\t\tETotal" << endl; | 
|---|
| 527 | for (int j = 0; j < b; j++) { | 
|---|
| 528 | for (int i = 0; i < a; i++) | 
|---|
| 529 | output << correction[i][j] << "\t"; | 
|---|
| 530 | output << endl; | 
|---|
| 531 | } | 
|---|
| 532 | output.close(); | 
|---|
| 533 | } | 
|---|
| 534 | line = path; | 
|---|
| 535 | line.append("/"); | 
|---|
| 536 | line += HCORRECTIONSUFFIX; | 
|---|
| 537 | output.open(line.c_str()); | 
|---|
| 538 | output << "Time\t\tTotal\t\tKinetic\t\tNonLocal\tCorrelation\tExchange\tPseudo\t\tHartree\t\t-Gauss\t\tEwald\t\tIonKin\t\tETotal" << endl; | 
|---|
| 539 | for (int j = 0; j < b; j++) { | 
|---|
| 540 | for (int i = 0; i < a; i++) | 
|---|
| 541 | output << 0 << "\t"; | 
|---|
| 542 | output << endl; | 
|---|
| 543 | } | 
|---|
| 544 | output.close(); | 
|---|
| 545 | // 6. free memory of parsed matrices | 
|---|
| 546 | FitConstant = Malloc<double**>(a, "MoleculeListClass::AddHydrogenCorrection: ***FitConstant"); | 
|---|
| 547 | for (int k = 0; k < 3; k++) { | 
|---|
| 548 | FitConstant[k] = Malloc<double*>(a, "MoleculeListClass::AddHydrogenCorrection: **FitConstant[]"); | 
|---|
| 549 | for (int i = a; i--;) { | 
|---|
| 550 | FitConstant[k][i] = Malloc<double>(b, "MoleculeListClass::AddHydrogenCorrection: *FitConstant[][]"); | 
|---|
| 551 | } | 
|---|
| 552 | } | 
|---|
| 553 | cout << "done." << endl; | 
|---|
| 554 | return true; | 
|---|
| 555 | }; | 
|---|
| 556 |  | 
|---|
| 557 | /** Store force indices, i.e. the connection between the nuclear index in the total molecule config and the respective atom in fragment config. | 
|---|
| 558 | * \param *out output stream for debugging | 
|---|
| 559 | * \param *path path to file | 
|---|
| 560 | * \param *SortIndex Index to map from the BFS labeling to the sequence how of Ion_Type in the config | 
|---|
| 561 | * \return true - file written successfully, false - writing failed | 
|---|
| 562 | */ | 
|---|
| 563 | bool MoleculeListClass::StoreForcesFile(ofstream *out, char *path, | 
|---|
| 564 | int *SortIndex) | 
|---|
| 565 | { | 
|---|
| 566 | bool status = true; | 
|---|
| 567 | ofstream ForcesFile; | 
|---|
| 568 | stringstream line; | 
|---|
| 569 | atom *Walker = NULL; | 
|---|
| 570 | element *runner = NULL; | 
|---|
| 571 |  | 
|---|
| 572 | // open file for the force factors | 
|---|
| 573 | *out << Verbose(1) << "Saving  force factors ... "; | 
|---|
| 574 | line << path << "/" << FRAGMENTPREFIX << FORCESFILE; | 
|---|
| 575 | ForcesFile.open(line.str().c_str(), ios::out); | 
|---|
| 576 | if (ForcesFile != NULL) { | 
|---|
| 577 | //cout << Verbose(1) << "Final AtomicForcesList: "; | 
|---|
| 578 | //output << prefix << "Forces" << endl; | 
|---|
| 579 | for (MoleculeList::iterator ListRunner = ListOfMolecules.begin(); ListRunner != ListOfMolecules.end(); ListRunner++) { | 
|---|
| 580 | runner = (*ListRunner)->elemente->start; | 
|---|
| 581 | while (runner->next != (*ListRunner)->elemente->end) { // go through every element | 
|---|
| 582 | runner = runner->next; | 
|---|
| 583 | if ((*ListRunner)->ElementsInMolecule[runner->Z]) { // if this element got atoms | 
|---|
| 584 | Walker = (*ListRunner)->start; | 
|---|
| 585 | while (Walker->next != (*ListRunner)->end) { // go through every atom of this element | 
|---|
| 586 | Walker = Walker->next; | 
|---|
| 587 | if (Walker->type->Z == runner->Z) { | 
|---|
| 588 | if ((Walker->GetTrueFather() != NULL) && (Walker->GetTrueFather() != Walker)) {// if there is a rea | 
|---|
| 589 | //cout << "Walker is " << *Walker << " with true father " << *( Walker->GetTrueFather()) << ", it | 
|---|
| 590 | ForcesFile << SortIndex[Walker->GetTrueFather()->nr] << "\t"; | 
|---|
| 591 | } else | 
|---|
| 592 | // otherwise a -1 to indicate an added saturation hydrogen | 
|---|
| 593 | ForcesFile << "-1\t"; | 
|---|
| 594 | } | 
|---|
| 595 | } | 
|---|
| 596 | } | 
|---|
| 597 | } | 
|---|
| 598 | ForcesFile << endl; | 
|---|
| 599 | } | 
|---|
| 600 | ForcesFile.close(); | 
|---|
| 601 | *out << Verbose(1) << "done." << endl; | 
|---|
| 602 | } else { | 
|---|
| 603 | status = false; | 
|---|
| 604 | *out << Verbose(1) << "failed to open file " << line.str() << "." << endl; | 
|---|
| 605 | } | 
|---|
| 606 | ForcesFile.close(); | 
|---|
| 607 |  | 
|---|
| 608 | return status; | 
|---|
| 609 | }; | 
|---|
| 610 |  | 
|---|
| 611 | /** Writes a config file for each molecule in the given \a **FragmentList. | 
|---|
| 612 | * \param *out output stream for debugging | 
|---|
| 613 | * \param *configuration standard configuration to attach atoms in fragment molecule to. | 
|---|
| 614 | * \param *SortIndex Index to map from the BFS labeling to the sequence how of Ion_Type in the config | 
|---|
| 615 | * \param DoPeriodic true - call ScanForPeriodicCorrection, false - don't | 
|---|
| 616 | * \param DoCentering true - call molecule::CenterEdge(), false - don't | 
|---|
| 617 | * \return true - success (each file was written), false - something went wrong. | 
|---|
| 618 | */ | 
|---|
| 619 | bool MoleculeListClass::OutputConfigForListOfFragments(ofstream *out, config *configuration, int *SortIndex) | 
|---|
| 620 | { | 
|---|
| 621 | ofstream outputFragment; | 
|---|
| 622 | char FragmentName[MAXSTRINGSIZE]; | 
|---|
| 623 | char PathBackup[MAXSTRINGSIZE]; | 
|---|
| 624 | bool result = true; | 
|---|
| 625 | bool intermediateResult = true; | 
|---|
| 626 | atom *Walker = NULL; | 
|---|
| 627 | Vector BoxDimension; | 
|---|
| 628 | char *FragmentNumber = NULL; | 
|---|
| 629 | char *path = NULL; | 
|---|
| 630 | int FragmentCounter = 0; | 
|---|
| 631 | ofstream output; | 
|---|
| 632 |  | 
|---|
| 633 | // store the fragments as config and as xyz | 
|---|
| 634 | for (MoleculeList::iterator ListRunner = ListOfMolecules.begin(); ListRunner != ListOfMolecules.end(); ListRunner++) { | 
|---|
| 635 | // save default path as it is changed for each fragment | 
|---|
| 636 | path = configuration->GetDefaultPath(); | 
|---|
| 637 | if (path != NULL) | 
|---|
| 638 | strcpy(PathBackup, path); | 
|---|
| 639 | else | 
|---|
| 640 | cerr << "OutputConfigForListOfFragments: NULL default path obtained from config!" << endl; | 
|---|
| 641 |  | 
|---|
| 642 | // correct periodic | 
|---|
| 643 | (*ListRunner)->ScanForPeriodicCorrection(out); | 
|---|
| 644 |  | 
|---|
| 645 | // output xyz file | 
|---|
| 646 | FragmentNumber = FixedDigitNumber(ListOfMolecules.size(), FragmentCounter++); | 
|---|
| 647 | sprintf(FragmentName, "%s/%s%s.conf.xyz", configuration->configpath, FRAGMENTPREFIX, FragmentNumber); | 
|---|
| 648 | outputFragment.open(FragmentName, ios::out); | 
|---|
| 649 | *out << Verbose(2) << "Saving bond fragment No. " << FragmentNumber << "/" << FragmentCounter - 1 << " as XYZ ..."; | 
|---|
| 650 | if ((intermediateResult = (*ListRunner)->OutputXYZ(&outputFragment))) | 
|---|
| 651 | *out << " done." << endl; | 
|---|
| 652 | else | 
|---|
| 653 | *out << " failed." << endl; | 
|---|
| 654 | result = result && intermediateResult; | 
|---|
| 655 | outputFragment.close(); | 
|---|
| 656 | outputFragment.clear(); | 
|---|
| 657 |  | 
|---|
| 658 | // list atoms in fragment for debugging | 
|---|
| 659 | *out << Verbose(2) << "Contained atoms: "; | 
|---|
| 660 | Walker = (*ListRunner)->start; | 
|---|
| 661 | while (Walker->next != (*ListRunner)->end) { | 
|---|
| 662 | Walker = Walker->next; | 
|---|
| 663 | *out << Walker->Name << " "; | 
|---|
| 664 | } | 
|---|
| 665 | *out << endl; | 
|---|
| 666 |  | 
|---|
| 667 | // center on edge | 
|---|
| 668 | (*ListRunner)->CenterEdge(out, &BoxDimension); | 
|---|
| 669 | (*ListRunner)->SetBoxDimension(&BoxDimension); // update Box of atoms by boundary | 
|---|
| 670 | int j = -1; | 
|---|
| 671 | for (int k = 0; k < NDIM; k++) { | 
|---|
| 672 | j += k + 1; | 
|---|
| 673 | BoxDimension.x[k] = 2.5 * (configuration->GetIsAngstroem() ? 1. : 1. / AtomicLengthToAngstroem); | 
|---|
| 674 | (*ListRunner)->cell_size[j] += BoxDimension.x[k] * 2.; | 
|---|
| 675 | } | 
|---|
| 676 | (*ListRunner)->Translate(&BoxDimension); | 
|---|
| 677 |  | 
|---|
| 678 | // also calculate necessary orbitals | 
|---|
| 679 | (*ListRunner)->CountElements(); // this is a bugfix, atoms should shoulds actually be added correctly to this fragment | 
|---|
| 680 | (*ListRunner)->CalculateOrbitals(*configuration); | 
|---|
| 681 |  | 
|---|
| 682 | // change path in config | 
|---|
| 683 | //strcpy(PathBackup, configuration->configpath); | 
|---|
| 684 | sprintf(FragmentName, "%s/%s%s/", PathBackup, FRAGMENTPREFIX, FragmentNumber); | 
|---|
| 685 | configuration->SetDefaultPath(FragmentName); | 
|---|
| 686 |  | 
|---|
| 687 | // and save as config | 
|---|
| 688 | sprintf(FragmentName, "%s/%s%s.conf", configuration->configpath, FRAGMENTPREFIX, FragmentNumber); | 
|---|
| 689 | *out << Verbose(2) << "Saving bond fragment No. " << FragmentNumber << "/" << FragmentCounter - 1 << " as config ..."; | 
|---|
| 690 | if ((intermediateResult = configuration->Save(FragmentName, (*ListRunner)->elemente, (*ListRunner)))) | 
|---|
| 691 | *out << " done." << endl; | 
|---|
| 692 | else | 
|---|
| 693 | *out << " failed." << endl; | 
|---|
| 694 | result = result && intermediateResult; | 
|---|
| 695 |  | 
|---|
| 696 | // restore old config | 
|---|
| 697 | configuration->SetDefaultPath(PathBackup); | 
|---|
| 698 |  | 
|---|
| 699 | // and save as mpqc input file | 
|---|
| 700 | sprintf(FragmentName, "%s/%s%s.conf", configuration->configpath, FRAGMENTPREFIX, FragmentNumber); | 
|---|
| 701 | *out << Verbose(2) << "Saving bond fragment No. " << FragmentNumber << "/" << FragmentCounter - 1 << " as mpqc input ..."; | 
|---|
| 702 | if ((intermediateResult = configuration->SaveMPQC(FragmentName, (*ListRunner)))) | 
|---|
| 703 | *out << " done." << endl; | 
|---|
| 704 | else | 
|---|
| 705 | *out << " failed." << endl; | 
|---|
| 706 |  | 
|---|
| 707 | result = result && intermediateResult; | 
|---|
| 708 | //outputFragment.close(); | 
|---|
| 709 | //outputFragment.clear(); | 
|---|
| 710 | delete (FragmentNumber); | 
|---|
| 711 | //Free(&FragmentNumber); | 
|---|
| 712 | } | 
|---|
| 713 | cout << " done." << endl; | 
|---|
| 714 |  | 
|---|
| 715 | // printing final number | 
|---|
| 716 | *out << "Final number of fragments: " << FragmentCounter << "." << endl; | 
|---|
| 717 |  | 
|---|
| 718 | return result; | 
|---|
| 719 | }; | 
|---|
| 720 |  | 
|---|
| 721 | /** Counts the number of molecules with the molecule::ActiveFlag set. | 
|---|
| 722 | * \return number of molecules with ActiveFlag set to true. | 
|---|
| 723 | */ | 
|---|
| 724 | int MoleculeListClass::NumberOfActiveMolecules() | 
|---|
| 725 | { | 
|---|
| 726 | int count = 0; | 
|---|
| 727 | for (MoleculeList::iterator ListRunner = ListOfMolecules.begin(); ListRunner != ListOfMolecules.end(); ListRunner++) | 
|---|
| 728 | count += ((*ListRunner)->ActiveFlag ? 1 : 0); | 
|---|
| 729 | return count; | 
|---|
| 730 | }; | 
|---|
| 731 |  | 
|---|
| 732 |  | 
|---|
| 733 | /******************************************* Class MoleculeLeafClass ************************************************/ | 
|---|
| 734 |  | 
|---|
| 735 | /** Constructor for MoleculeLeafClass root leaf. | 
|---|
| 736 | * \param *Up Leaf on upper level | 
|---|
| 737 | * \param *PreviousLeaf NULL - We are the first leaf on this level, otherwise points to previous in list | 
|---|
| 738 | */ | 
|---|
| 739 | //MoleculeLeafClass::MoleculeLeafClass(MoleculeLeafClass *Up = NULL, MoleculeLeafClass *Previous = NULL) | 
|---|
| 740 | MoleculeLeafClass::MoleculeLeafClass(MoleculeLeafClass *PreviousLeaf = NULL) | 
|---|
| 741 | { | 
|---|
| 742 | //  if (Up != NULL) | 
|---|
| 743 | //    if (Up->DownLeaf == NULL) // are we the first down leaf for the upper leaf? | 
|---|
| 744 | //      Up->DownLeaf = this; | 
|---|
| 745 | //  UpLeaf = Up; | 
|---|
| 746 | //  DownLeaf = NULL; | 
|---|
| 747 | Leaf = NULL; | 
|---|
| 748 | previous = PreviousLeaf; | 
|---|
| 749 | if (previous != NULL) { | 
|---|
| 750 | MoleculeLeafClass *Walker = previous->next; | 
|---|
| 751 | previous->next = this; | 
|---|
| 752 | next = Walker; | 
|---|
| 753 | } else { | 
|---|
| 754 | next = NULL; | 
|---|
| 755 | } | 
|---|
| 756 | }; | 
|---|
| 757 |  | 
|---|
| 758 | /** Destructor for MoleculeLeafClass. | 
|---|
| 759 | */ | 
|---|
| 760 | MoleculeLeafClass::~MoleculeLeafClass() | 
|---|
| 761 | { | 
|---|
| 762 | //  if (DownLeaf != NULL) {// drop leaves further down | 
|---|
| 763 | //    MoleculeLeafClass *Walker = DownLeaf; | 
|---|
| 764 | //    MoleculeLeafClass *Next; | 
|---|
| 765 | //    do { | 
|---|
| 766 | //      Next = Walker->NextLeaf; | 
|---|
| 767 | //      delete(Walker); | 
|---|
| 768 | //      Walker = Next; | 
|---|
| 769 | //    } while (Walker != NULL); | 
|---|
| 770 | //    // Last Walker sets DownLeaf automatically to NULL | 
|---|
| 771 | //  } | 
|---|
| 772 | // remove the leaf itself | 
|---|
| 773 | if (Leaf != NULL) { | 
|---|
| 774 | delete (Leaf); | 
|---|
| 775 | Leaf = NULL; | 
|---|
| 776 | } | 
|---|
| 777 | // remove this Leaf from level list | 
|---|
| 778 | if (previous != NULL) | 
|---|
| 779 | previous->next = next; | 
|---|
| 780 | //  } else { // we are first in list (connects to UpLeaf->DownLeaf) | 
|---|
| 781 | //    if ((NextLeaf != NULL) && (NextLeaf->UpLeaf == NULL)) | 
|---|
| 782 | //      NextLeaf->UpLeaf = UpLeaf;  // either null as we are top level or the upleaf of the first node | 
|---|
| 783 | //    if (UpLeaf != NULL) | 
|---|
| 784 | //      UpLeaf->DownLeaf = NextLeaf;  // either null as we are only leaf or NextLeaf if we are just the first | 
|---|
| 785 | //  } | 
|---|
| 786 | //  UpLeaf = NULL; | 
|---|
| 787 | if (next != NULL) // are we last in list | 
|---|
| 788 | next->previous = previous; | 
|---|
| 789 | next = NULL; | 
|---|
| 790 | previous = NULL; | 
|---|
| 791 | }; | 
|---|
| 792 |  | 
|---|
| 793 | /** Adds \a molecule leaf to the tree. | 
|---|
| 794 | * \param *ptr ptr to molecule to be added | 
|---|
| 795 | * \param *Previous previous MoleculeLeafClass referencing level and which on the level | 
|---|
| 796 | * \return true - success, false - something went wrong | 
|---|
| 797 | */ | 
|---|
| 798 | bool MoleculeLeafClass::AddLeaf(molecule *ptr, MoleculeLeafClass *Previous) | 
|---|
| 799 | { | 
|---|
| 800 | return false; | 
|---|
| 801 | }; | 
|---|
| 802 |  | 
|---|
| 803 | /** Fills the bond structure of this chain list subgraphs that are derived from a complete \a *reference molecule. | 
|---|
| 804 | * Calls this routine in each MoleculeLeafClass::next subgraph if it's not NULL. | 
|---|
| 805 | * \param *out output stream for debugging | 
|---|
| 806 | * \param *reference reference molecule with the bond structure to be copied | 
|---|
| 807 | * \param &FragmentCounter Counter needed to address \a **ListOfLocalAtoms | 
|---|
| 808 | * \param ***ListOfLocalAtoms Lookup table for each subgraph and index of each atom in \a *reference, may be NULL on start, then it is filled | 
|---|
| 809 | * \param FreeList true - ***ListOfLocalAtoms is free'd before return, false - it is not | 
|---|
| 810 | * \return true - success, false - faoilure | 
|---|
| 811 | */ | 
|---|
| 812 | bool MoleculeLeafClass::FillBondStructureFromReference(ofstream *out, molecule *reference, int &FragmentCounter, atom ***&ListOfLocalAtoms, bool FreeList) | 
|---|
| 813 | { | 
|---|
| 814 | atom *Walker = NULL, *OtherWalker = NULL; | 
|---|
| 815 | bond *Binder = NULL; | 
|---|
| 816 | bool status = true; | 
|---|
| 817 | int AtomNo; | 
|---|
| 818 |  | 
|---|
| 819 | *out << Verbose(1) << "Begin of FillBondStructureFromReference." << endl; | 
|---|
| 820 | // fill ListOfLocalAtoms if NULL was given | 
|---|
| 821 | if (!FillListOfLocalAtoms(out, ListOfLocalAtoms, FragmentCounter, reference->AtomCount, FreeList)) { | 
|---|
| 822 | *out << Verbose(1) << "Filling of ListOfLocalAtoms failed." << endl; | 
|---|
| 823 | return false; | 
|---|
| 824 | } | 
|---|
| 825 |  | 
|---|
| 826 | if (status) { | 
|---|
| 827 | *out << Verbose(1) << "Creating adjacency list for subgraph " << this | 
|---|
| 828 | << "." << endl; | 
|---|
| 829 | Walker = Leaf->start; | 
|---|
| 830 | while (Walker->next != Leaf->end) { | 
|---|
| 831 | Walker = Walker->next; | 
|---|
| 832 | AtomNo = Walker->GetTrueFather()->nr; // global id of the current walker | 
|---|
| 833 | for (int i = 0; i < reference->NumberOfBondsPerAtom[AtomNo]; i++) { // go through father's bonds and copy them all | 
|---|
| 834 | Binder = reference->ListOfBondsPerAtom[AtomNo][i]; | 
|---|
| 835 | OtherWalker = ListOfLocalAtoms[FragmentCounter][Binder->GetOtherAtom(Walker->GetTrueFather())->nr]; // local copy of current bond partner of walker | 
|---|
| 836 | if (OtherWalker != NULL) { | 
|---|
| 837 | if (OtherWalker->nr > Walker->nr) | 
|---|
| 838 | Leaf->AddBond(Walker, OtherWalker, Binder->BondDegree); | 
|---|
| 839 | } else { | 
|---|
| 840 | *out << Verbose(1) << "OtherWalker = ListOfLocalAtoms[" << FragmentCounter << "][" << Binder->GetOtherAtom(Walker->GetTrueFather())->nr << "] is NULL!" << endl; | 
|---|
| 841 | status = false; | 
|---|
| 842 | } | 
|---|
| 843 | } | 
|---|
| 844 | } | 
|---|
| 845 | Leaf->CreateListOfBondsPerAtom(out); | 
|---|
| 846 | FragmentCounter++; | 
|---|
| 847 | if (next != NULL) | 
|---|
| 848 | status = next->FillBondStructureFromReference(out, reference, FragmentCounter, ListOfLocalAtoms); | 
|---|
| 849 | FragmentCounter--; | 
|---|
| 850 | } | 
|---|
| 851 |  | 
|---|
| 852 | if ((FreeList) && (ListOfLocalAtoms != NULL)) { | 
|---|
| 853 | // free the index lookup list | 
|---|
| 854 | Free(&ListOfLocalAtoms[FragmentCounter]); | 
|---|
| 855 | if (FragmentCounter == 0) // first fragments frees the initial pointer to list | 
|---|
| 856 | Free(&ListOfLocalAtoms); | 
|---|
| 857 | } | 
|---|
| 858 | FragmentCounter--; | 
|---|
| 859 | *out << Verbose(1) << "End of FillBondStructureFromReference." << endl; | 
|---|
| 860 | return status; | 
|---|
| 861 | }; | 
|---|
| 862 |  | 
|---|
| 863 | /** Fills the root stack for sites to be used as root in fragmentation depending on order or adaptivity criteria | 
|---|
| 864 | * Again, as in \sa FillBondStructureFromReference steps recursively through each Leaf in this chain list of molecule's. | 
|---|
| 865 | * \param *out output stream for debugging | 
|---|
| 866 | * \param *&RootStack stack to be filled | 
|---|
| 867 | * \param *AtomMask defines true/false per global Atom::nr to mask in/out each nuclear site | 
|---|
| 868 | * \param &FragmentCounter counts through the fragments in this MoleculeLeafClass | 
|---|
| 869 | * \return true - stack is non-empty, fragmentation necessary, false - stack is empty, no more sites to update | 
|---|
| 870 | */ | 
|---|
| 871 | bool MoleculeLeafClass::FillRootStackForSubgraphs(ofstream *out, | 
|---|
| 872 | KeyStack *&RootStack, bool *AtomMask, int &FragmentCounter) | 
|---|
| 873 | { | 
|---|
| 874 | atom *Walker = NULL, *Father = NULL; | 
|---|
| 875 |  | 
|---|
| 876 | if (RootStack != NULL) { | 
|---|
| 877 | // find first root candidates | 
|---|
| 878 | if (&(RootStack[FragmentCounter]) != NULL) { | 
|---|
| 879 | RootStack[FragmentCounter].clear(); | 
|---|
| 880 | Walker = Leaf->start; | 
|---|
| 881 | while (Walker->next != Leaf->end) { // go through all (non-hydrogen) atoms | 
|---|
| 882 | Walker = Walker->next; | 
|---|
| 883 | Father = Walker->GetTrueFather(); | 
|---|
| 884 | if (AtomMask[Father->nr]) // apply mask | 
|---|
| 885 | #ifdef ADDHYDROGEN | 
|---|
| 886 | if (Walker->type->Z != 1) // skip hydrogen | 
|---|
| 887 | #endif | 
|---|
| 888 | RootStack[FragmentCounter].push_front(Walker->nr); | 
|---|
| 889 | } | 
|---|
| 890 | if (next != NULL) | 
|---|
| 891 | next->FillRootStackForSubgraphs(out, RootStack, AtomMask, ++FragmentCounter); | 
|---|
| 892 | } else { | 
|---|
| 893 | *out << Verbose(1) << "Rootstack[" << FragmentCounter << "] is NULL." << endl; | 
|---|
| 894 | return false; | 
|---|
| 895 | } | 
|---|
| 896 | FragmentCounter--; | 
|---|
| 897 | return true; | 
|---|
| 898 | } else { | 
|---|
| 899 | *out << Verbose(1) << "Rootstack is NULL." << endl; | 
|---|
| 900 | return false; | 
|---|
| 901 | } | 
|---|
| 902 | }; | 
|---|
| 903 |  | 
|---|
| 904 | /** Fills a lookup list of father's Atom::nr -> atom for each subgraph. | 
|---|
| 905 | * \param *out output stream fro debugging | 
|---|
| 906 | * \param ***ListOfLocalAtoms Lookup table for each subgraph and index of each atom in global molecule, may be NULL on start, then it is filled | 
|---|
| 907 | * \param FragmentCounter counts the fragments as we move along the list | 
|---|
| 908 | * \param GlobalAtomCount number of atoms in the complete molecule | 
|---|
| 909 | * \param &FreeList true - ***ListOfLocalAtoms is free'd before return, false - it is not | 
|---|
| 910 | * \return true - succes, false - failure | 
|---|
| 911 | */ | 
|---|
| 912 | bool MoleculeLeafClass::FillListOfLocalAtoms(ofstream *out, atom ***&ListOfLocalAtoms, const int FragmentCounter, const int GlobalAtomCount, bool &FreeList) | 
|---|
| 913 | { | 
|---|
| 914 | bool status = true; | 
|---|
| 915 |  | 
|---|
| 916 | int Counter = Count(); | 
|---|
| 917 | if (ListOfLocalAtoms == NULL) { // allocated initial pointer | 
|---|
| 918 | // allocate and set each field to NULL | 
|---|
| 919 | ListOfLocalAtoms = Malloc<atom**>(Counter, "MoleculeLeafClass::FillBondStructureFromReference - ***ListOfLocalAtoms"); | 
|---|
| 920 | if (ListOfLocalAtoms != NULL) { | 
|---|
| 921 | for (int i = Counter; i--;) | 
|---|
| 922 | ListOfLocalAtoms[i] = NULL; | 
|---|
| 923 | FreeList = FreeList && true; | 
|---|
| 924 | } else | 
|---|
| 925 | status = false; | 
|---|
| 926 | } | 
|---|
| 927 |  | 
|---|
| 928 | if ((ListOfLocalAtoms != NULL) && (ListOfLocalAtoms[FragmentCounter] == NULL)) { // allocate and fill list of this fragment/subgraph | 
|---|
| 929 | status = status && CreateFatherLookupTable(out, Leaf->start, Leaf->end, ListOfLocalAtoms[FragmentCounter], GlobalAtomCount); | 
|---|
| 930 | FreeList = FreeList && true; | 
|---|
| 931 | } | 
|---|
| 932 |  | 
|---|
| 933 | return status; | 
|---|
| 934 | }; | 
|---|
| 935 |  | 
|---|
| 936 | /** The indices per keyset are compared to the respective father's Atom::nr in each subgraph and thus put into \a **&FragmentList. | 
|---|
| 937 | * \param *out output stream fro debugging | 
|---|
| 938 | * \param *reference reference molecule with the bond structure to be copied | 
|---|
| 939 | * \param *KeySetList list with all keysets | 
|---|
| 940 | * \param ***ListOfLocalAtoms Lookup table for each subgraph and index of each atom in global molecule, may be NULL on start, then it is filled | 
|---|
| 941 | * \param **&FragmentList list to be allocated and returned | 
|---|
| 942 | * \param &FragmentCounter counts the fragments as we move along the list | 
|---|
| 943 | * \param FreeList true - ***ListOfLocalAtoms is free'd before return, false - it is not | 
|---|
| 944 | * \retuen true - success, false - failure | 
|---|
| 945 | */ | 
|---|
| 946 | bool MoleculeLeafClass::AssignKeySetsToFragment(ofstream *out, | 
|---|
| 947 | molecule *reference, Graph *KeySetList, atom ***&ListOfLocalAtoms, | 
|---|
| 948 | Graph **&FragmentList, int &FragmentCounter, bool FreeList) | 
|---|
| 949 | { | 
|---|
| 950 | bool status = true; | 
|---|
| 951 | int KeySetCounter = 0; | 
|---|
| 952 |  | 
|---|
| 953 | *out << Verbose(1) << "Begin of AssignKeySetsToFragment." << endl; | 
|---|
| 954 | // fill ListOfLocalAtoms if NULL was given | 
|---|
| 955 | if (!FillListOfLocalAtoms(out, ListOfLocalAtoms, FragmentCounter, reference->AtomCount, FreeList)) { | 
|---|
| 956 | *out << Verbose(1) << "Filling of ListOfLocalAtoms failed." << endl; | 
|---|
| 957 | return false; | 
|---|
| 958 | } | 
|---|
| 959 |  | 
|---|
| 960 | // allocate fragment list | 
|---|
| 961 | if (FragmentList == NULL) { | 
|---|
| 962 | KeySetCounter = Count(); | 
|---|
| 963 | FragmentList = Malloc<Graph*>(KeySetCounter, "MoleculeLeafClass::AssignKeySetsToFragment - **FragmentList"); | 
|---|
| 964 | for (int i = KeySetCounter; i--;) | 
|---|
| 965 | FragmentList[i] = NULL; | 
|---|
| 966 | KeySetCounter = 0; | 
|---|
| 967 | } | 
|---|
| 968 |  | 
|---|
| 969 | if ((KeySetList != NULL) && (KeySetList->size() != 0)) { // if there are some scanned keysets at all | 
|---|
| 970 | // assign scanned keysets | 
|---|
| 971 | if (FragmentList[FragmentCounter] == NULL) | 
|---|
| 972 | FragmentList[FragmentCounter] = new Graph; | 
|---|
| 973 | KeySet *TempSet = new KeySet; | 
|---|
| 974 | for (Graph::iterator runner = KeySetList->begin(); runner != KeySetList->end(); runner++) { // key sets contain global numbers! | 
|---|
| 975 | if (ListOfLocalAtoms[FragmentCounter][reference->FindAtom(*((*runner).first.begin()))->nr] != NULL) {// as we may assume that that bond structure is unchanged, we only test the first key in each set | 
|---|
| 976 | // translate keyset to local numbers | 
|---|
| 977 | for (KeySet::iterator sprinter = (*runner).first.begin(); sprinter != (*runner).first.end(); sprinter++) | 
|---|
| 978 | TempSet->insert(ListOfLocalAtoms[FragmentCounter][reference->FindAtom(*sprinter)->nr]->nr); | 
|---|
| 979 | // insert into FragmentList | 
|---|
| 980 | FragmentList[FragmentCounter]->insert(GraphPair(*TempSet, pair<int, double> (KeySetCounter++, (*runner).second.second))); | 
|---|
| 981 | } | 
|---|
| 982 | TempSet->clear(); | 
|---|
| 983 | } | 
|---|
| 984 | delete (TempSet); | 
|---|
| 985 | if (KeySetCounter == 0) {// if there are no keysets, delete the list | 
|---|
| 986 | *out << Verbose(1) << "KeySetCounter is zero, deleting FragmentList." << endl; | 
|---|
| 987 | delete (FragmentList[FragmentCounter]); | 
|---|
| 988 | } else | 
|---|
| 989 | *out << Verbose(1) << KeySetCounter << " keysets were assigned to subgraph " << FragmentCounter << "." << endl; | 
|---|
| 990 | FragmentCounter++; | 
|---|
| 991 | if (next != NULL) | 
|---|
| 992 | next->AssignKeySetsToFragment(out, reference, KeySetList, ListOfLocalAtoms, FragmentList, FragmentCounter, FreeList); | 
|---|
| 993 | FragmentCounter--; | 
|---|
| 994 | } else | 
|---|
| 995 | *out << Verbose(1) << "KeySetList is NULL or empty." << endl; | 
|---|
| 996 |  | 
|---|
| 997 | if ((FreeList) && (ListOfLocalAtoms != NULL)) { | 
|---|
| 998 | // free the index lookup list | 
|---|
| 999 | Free(&ListOfLocalAtoms[FragmentCounter]); | 
|---|
| 1000 | if (FragmentCounter == 0) // first fragments frees the initial pointer to list | 
|---|
| 1001 | Free(&ListOfLocalAtoms); | 
|---|
| 1002 | } | 
|---|
| 1003 | *out << Verbose(1) << "End of AssignKeySetsToFragment." << endl; | 
|---|
| 1004 | return status; | 
|---|
| 1005 | }; | 
|---|
| 1006 |  | 
|---|
| 1007 | /** Translate list into global numbers (i.e. ones that are valid in "this" molecule, not in MolecularWalker->Leaf) | 
|---|
| 1008 | * \param *out output stream for debugging | 
|---|
| 1009 | * \param **FragmentList Graph with local numbers per fragment | 
|---|
| 1010 | * \param &FragmentCounter counts the fragments as we move along the list | 
|---|
| 1011 | * \param &TotalNumberOfKeySets global key set counter | 
|---|
| 1012 | * \param &TotalGraph Graph to be filled with global numbers | 
|---|
| 1013 | */ | 
|---|
| 1014 | void MoleculeLeafClass::TranslateIndicesToGlobalIDs(ofstream *out, | 
|---|
| 1015 | Graph **FragmentList, int &FragmentCounter, int &TotalNumberOfKeySets, | 
|---|
| 1016 | Graph &TotalGraph) | 
|---|
| 1017 | { | 
|---|
| 1018 | *out << Verbose(1) << "Begin of TranslateIndicesToGlobalIDs." << endl; | 
|---|
| 1019 | KeySet *TempSet = new KeySet; | 
|---|
| 1020 | if (FragmentList[FragmentCounter] != NULL) { | 
|---|
| 1021 | for (Graph::iterator runner = FragmentList[FragmentCounter]->begin(); runner != FragmentList[FragmentCounter]->end(); runner++) { | 
|---|
| 1022 | for (KeySet::iterator sprinter = (*runner).first.begin(); sprinter != (*runner).first.end(); sprinter++) | 
|---|
| 1023 | TempSet->insert((Leaf->FindAtom(*sprinter))->GetTrueFather()->nr); | 
|---|
| 1024 | TotalGraph.insert(GraphPair(*TempSet, pair<int, double> (TotalNumberOfKeySets++, (*runner).second.second))); | 
|---|
| 1025 | TempSet->clear(); | 
|---|
| 1026 | } | 
|---|
| 1027 | delete (TempSet); | 
|---|
| 1028 | } else { | 
|---|
| 1029 | *out << Verbose(1) << "FragmentList is NULL." << endl; | 
|---|
| 1030 | } | 
|---|
| 1031 | if (next != NULL) | 
|---|
| 1032 | next->TranslateIndicesToGlobalIDs(out, FragmentList, ++FragmentCounter, TotalNumberOfKeySets, TotalGraph); | 
|---|
| 1033 | FragmentCounter--; | 
|---|
| 1034 | *out << Verbose(1) << "End of TranslateIndicesToGlobalIDs." << endl; | 
|---|
| 1035 | }; | 
|---|
| 1036 |  | 
|---|
| 1037 | /** Simply counts the number of items in the list, from given MoleculeLeafClass. | 
|---|
| 1038 | * \return number of items | 
|---|
| 1039 | */ | 
|---|
| 1040 | int MoleculeLeafClass::Count() const | 
|---|
| 1041 | { | 
|---|
| 1042 | if (next != NULL) | 
|---|
| 1043 | return next->Count() + 1; | 
|---|
| 1044 | else | 
|---|
| 1045 | return 1; | 
|---|
| 1046 | }; | 
|---|
| 1047 |  | 
|---|